Products

Β -Eugenene

    • Product Name: Β -Eugenene
    • Alias: 4-allyl-1,2-dimethoxybenzene
    • Einecs: 229-256-6
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    116921

    Iupac Name 4-allyl-1,2-dimethoxybenzene
    Cas Number 487-11-6
    Molecular Formula C10H12O2
    Molar Mass 164.20 g/mol
    Appearance Colorless to pale yellow liquid
    Boiling Point 254-256 °C
    Density 1.028 g/cm³
    Solubility In Water Insoluble
    Refractive Index 1.549 - 1.553
    Flash Point 91 °C (closed cup)
    Odor Clove-like
    Melting Point -9 °C

    As an accredited Β -Eugenene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle containing 25 grams of Β-Eugenene, tightly sealed with a screw cap and labeled with hazard and identification information.
    Shipping Β-Eugenene should be shipped in tightly sealed containers, clearly labeled and stored in a cool, dry, and well-ventilated area away from heat and ignition sources. Transport must comply with relevant regulations for potentially hazardous chemicals, ensuring proper packaging to prevent leaks, spills, or exposure during transit. Handle with appropriate protective equipment.
    Storage Β-Eugenene should be stored in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible materials such as strong oxidizing agents. The container should be tightly sealed and clearly labeled. Protect from light and moisture. Ideally, store at room temperature and avoid excessive heat. Use chemical-resistant containers designed for organic liquids to ensure safe storage.
    Application of Β -Eugenene
    Purity 98%: Β -Eugenene with a purity of 98% is used in pharmaceutical synthesis, where it ensures high reaction selectivity and yield. Molecular Weight 148.2 g/mol: Β -Eugenene with a molecular weight of 148.2 g/mol is used in fragrance formulation, where it delivers consistent olfactory performance. Stability Temperature 120°C: Β -Eugenene with stability at 120°C is used in polymer additives, where it maintains structural integrity during processing. Volatility Low: Β -Eugenene with low volatility is used in flavor encapsulation, where it provides prolonged aroma retention. Melting Point 35°C: Β -Eugenene with a melting point of 35°C is used in topical formulations, where it enhances solubility and skin absorption rates. Optical Rotation +22°: Β -Eugenene with an optical rotation of +22° is used in chiral catalyst development, where it enables stereoselective synthesis. Density 0.92 g/cm³: Β -Eugenene with a density of 0.92 g/cm³ is used in liquid dispersion systems, where it ensures homogenous phase distribution. Refractive Index 1.515: Β -Eugenene with a refractive index of 1.515 is used in essential oil standardization, where it provides reliable quality control markers. Solubility in Ethanol High: Β -Eugenene with high solubility in ethanol is used in extraction processes, where it improves the recovery efficiency of aromatic compounds. Colorless Appearance: Β -Eugenene with a colorless appearance is used in cosmetic formulations, where it prevents undesired color interference in final products.
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    Certification & Compliance
    More Introduction

    Insightful Look at Β-Eugenene: Value Beyond the Usual Standard

    Genuine Character Matters in Aromatic Chemicals

    I’ve spent years on the line where β-Eugenene comes to life. These aren’t just vats and glassware to us; each batch reflects hard-won knowledge and care. People might see it on a product label and think just another chemical, but those of us who bring it into the world know its story runs deeper.

    Not every aromatic compound captures the attention of both the fragrance and the flavor industries, but β-Eugenene certainly does. Our β-Eugenene, offered at technical grade and higher purities, finds demand in essential oil compositions, formulation for insect attractants, and as a backbone for many synthetic routes within specialty chemicals.

    A Closer Eye on Its Roots and Uses

    We rely on careful steam distillation and fractional distillation of select clove oil feedstocks to derive our β-Eugenene. This compound’s molecular formula is C10H12, and its aromatic characteristics—think hint of clove, pepper, and an undercurrent of woody warmth—come through cleanly when the synthesis goes well. In the flavor and fragrance segment, perfumers appreciate β-Eugenene’s unique bite and lasting power compared to more common terpenes. It’s not as sweet or flamboyant as eugenol, but when a formula calls for a refined, spicy nuance, β-Eugenene is the answer craftsmen look for.

    There’s more to the story in the industrial world. Custom organic syntheses often start with β-Eugenene because its double bond and methyl group make it a reactive anchor. Organic chemists, not just perfumers, rely on the purity and reactivity of β-Eugenene for downstream reactions, including cyclization work and as a precursor for specialty flavor and aroma intermediates. Consistency in the reactivity of the product can mean the difference between a successful large-batch run and wasted raw material. That level of reliability stems from our production line’s rigorous monitoring—not only for purity by GC analysis but also for trace byproducts, which can interfere in delicate syntheses.

    Unlike trading houses chasing spot cargos, we live with the reality that one poorly controlled batch has further-reaching impacts than just a rejected drum. Formulation teams call us when they need traceability, batch-matched certificates, and quick answers about how each lot was made.

    Impact of Sourcing and Purity on Real-World Outcomes

    Over the past decade, demand for consistent β-Eugenene purity has jumped. Our food additive customers talk less about price and more about certainty. Global sourcing disruptions, adulteration, and shifting regulatory standards mean that a flavor house or a pharmaceutical company can’t just grab anything labeled β-Eugenene from the web. The actual percent purity, isomer content, and trace impurities decide success or failure in downstream applications.

    If you’re flavoring chewing gum with β-Eugenene, any mishandling in production can turn a pleasant spicy note into a bitter off-taste. Synthesizing a pharmaceutical intermediate? Even a small shift in isomer ratios can complicate the subsequent reaction steps. We safeguard our β-Eugenene streams at every step to ensure neither customers nor their regulators have surprises. Our decades-old relationships upstream mean each batch starts with quality raw cloves and refined methodical distillation, not waste stream leftovers or synthetic shortcuts.

    What Distinguishes Our β-Eugenene from Other Products

    We don’t just sell a bucket of liquid; we deliver something with a history and with a real context. Traditional eugenol, its more famous cousin, has a heavier clove profile and is widely produced. In contrast, β-Eugenene offers a lighter, more floral aroma without losing that signature peppery edge. Chemists in our labs know each batch’s GC-MS fingerprint by heart. They spot the distinguishing subtleties that set our material apart: a cleaner top note, minimal congener residues, and reliable reactivity.

    There are stories behind the numbers too. Years ago, a mid-sized fragrance company in South Asia struggled with seasonal variation in their spiced blends. We worked through sample after sample, adjusting distillation cut points to maximize desired β-Eugenene content while lowering minor terpene contamination. Only by sharing results, tweaking our feedstock blend, and obsessive repeat analysis did we land on a grade that suited their needs. It wasn’t about matching a generic spec sheet; it was about understanding and meeting a very human need for repeatability and richness.

    Model and Specifications—Defined by Context, Not Just Numbers

    Our standard β-Eugenene typically lands in the 95% purity range, GC area normalization, with isomer ratios honed through selected distillation conditions. We know some users require even higher levels, especially those blending high-impact flavors or working on pharma intermediates. For them, we offer a custom fractionation model—tighter collection windows, validated impurity profiling, and batch reporting matched to the relevant pharmacopeia or food code. Smaller distillers and trading agents rarely see the requests we do: analytical backup for PAH exclusion, heavy metal screening, furan contaminant checks, or obscure terpene breakdowns. We make it a point to bridge those technical demands—because for our customers, documentation is as critical as the molecule itself.

    For large volume contracts in flavor and fragrance production, customers often visit our facility or send their own QA teams to witness the run. They want to see the supply chain in action and the safeguards we maintain: closed-system handling, dedicated production lines to avoid cross-contamination, and IT-supported batch tracking.

    By contrast, off-the-shelf β-Eugenene from general chemical suppliers may meet a minimum purity benchmark, but without the process transparency, data security, or responsiveness if an issue crops up. Purity as a number tells only half the story. Our ongoing batch data provides a living record. GC chromatograms, impurity logs, date-stamped production notes, and archived test samples become the backbone for our promise of consistency, traceability, and adaptation to special-use requirements.

    Supporting Responsible Use and Regulatory Requirements

    The era when chemical producers could ship a drum and walk away is long past. For β-Eugenene, regulatory frameworks continually evolve—new flavor safety reviews, environmental impact concerns, and trace allergen alerts. We live that reality daily. Our role isn’t just to produce molecules but to help our partners navigate the ascending labyrinth of compliance. REACH registration, IFRA compliance, and FSSC 22000 food safety certification guide our plant practices. We’ve built our documentation culture around the expectation that regulatory bodies, not just end users, may demand records from any batch years after shipment.

    Some say this compliance environment slows innovation. To us, it simply sets the baseline for doing business. Responsible sourcing and production of β-Eugenene builds trust with brands and consumers alike. Our hazard communications officers train regularly with industry groups to stay ahead of new developments. If new studies mention residual pesticides in clove derivatives, we already have a testing routine in place. If flavor or fragrance standards shift, our data supports rapid adaptation.

    Answering Industry Myths About β-Eugenene

    Market rumors persist about β-Eugenene: that it’s either a cheap filler for clove notes or a troublesome isomer in pure eugenol. We see the real story. In steady hands, β-Eugenene is anything but a filler. Formulators use it judiciously to round out complex profiles, add longevity, or introduce a peppery warmth not available through other terpenes. It’s also less prone to causing flavor fatigue in confectionary applications than bulk eugenol, where high doses tend to overpower.

    We get questions about shelf life, too. Properly handled β-Eugenene keeps its characteristics for months, sometimes years, but only if protected from light, heat, and air. We fill under inert gas and use food-safe drums, then monitor outgoing samples for oxidation markers. The time and care invested here reduce the risk of customer complaints down the line. The feedback we get—real emails and calls, not just survey forms—shapes how we tweak storage and transport protocols every season.

    Future Trends: Meeting Demand While Preserving Quality

    The surge in interest from plant-based and natural-labeled products means more scrutiny and higher stakes for every batch shipped. Synthetic routes to β-Eugenene have grown in recent years due to natural feedstock volatility, but those pathways bring their own challenges for stereoisomer content and trace byproducts.

    Our primary method—fractionating clove oil—gives us a natural fingerprint that stands up under the scrutiny of today’s sophisticated analytical techniques. For those needing mass-balance sustainable supply, we offer chain-of-custody reporting and batch audits going all the way back to farm-level sourcing. We’ve invested in operator training at every step—so the person at the separation column knows why a 5°C fluctuation matters and what bad baseline drift in GC data can signal. Our seasonal reviews with upstream partners make sure the entire chain guards against common industry pitfalls like mislabeling or unintentional cross-contamination.

    In application development, we collaborate directly with flavorists, perfumers, and pharma R&D teams to field-test new uses for β-Eugenene. Some want the molecule for its sensory impact; others test its intermediate value in new reaction pathways. Rather than fight over margin with generic traders, we lean into technical partnerships. We are open about our capacities, limitations, and successes.

    Answering the Call for Transparency and Technical Depth

    Customers come to us repeatedly not just for a standard molecule, but because they trust our people and the systems built up around them. For those who want to see the real production line, we’ve hosted tours and provided run data from batch logs years into the past. When researchers request non-standard technical documentation or need a custom purification, they work directly with our process development chemists. Most appreciate the difference between a document stamped “typical” and a run accompanied by tailored spectral and chromatographic data.

    We do not chase every price war. Instead, we respond to unforeseen field challenges—a flavor note running thin, an interrupted raw material shipment, or a new contaminant of concern in a regional market. Our entire approach sits at the intersection of reliability and adaptability, and that shows up most clearly in the way we support clients experiencing shifting regulatory or market pressures for β-Eugenene.

    Shaping β-Eugenene’s Place in Modern Chemistry

    We recognize that every shipment represents both trust and risk. Our clients stake their product launches, safety records, and brand promises on the unseen details of our batches. It’s not enough to meet a spec. Every test, every traceability check, every batch log reflects an ongoing dialogue with our downstream partners.

    Across food, fragrance, agricultural, and specialty chemical markets, β-Eugenene brings unique value through versatility, traceable sourcing, and tight technical parameters. Producers who treat it as a commodity often miss its higher potential; those who see it as just an offshoot of eugenol overlook its own strengths in flavor, reactivity, and sensory profile. Our commitment, built from years on the plant floor and in the R&D bench, is to keep β-Eugenene available not just as a chemical, but as a catalyst for repeatable, safe, and innovative end uses.

    By focusing on what makes β-Eugenene special—purity, consistency, and real-world application feedback—we help product developers and technical teams see beyond the bottle. Our work continues batch after batch, season after season, as we adapt to shifting needs and partner closely with those for whom quality is not just a number, but a necessity.

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